AU2087899A - Linerless postage stamps - Google Patents

Linerless postage stamps

Info

Publication number
AU2087899A
AU2087899A AU20878/99A AU2087899A AU2087899A AU 2087899 A AU2087899 A AU 2087899A AU 20878/99 A AU20878/99 A AU 20878/99A AU 2087899 A AU2087899 A AU 2087899A AU 2087899 A AU2087899 A AU 2087899A
Authority
AU
Australia
Prior art keywords
stamp
inch
recited
sheet
adhesive
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
AU20878/99A
Other versions
AU759364B2 (en
Inventor
David K. Ii Rice
Adele Shipston
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Moore North America Inc
Original Assignee
Moore North America Inc
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Filing date
Publication date
Application filed by Moore North America Inc filed Critical Moore North America Inc
Publication of AU2087899A publication Critical patent/AU2087899A/en
Assigned to MOORE NORTH AMERICA, INC. reassignment MOORE NORTH AMERICA, INC. Amend patent request/document other than specification (104) Assignors: MOORE U.S.A., INC.
Application granted granted Critical
Publication of AU759364B2 publication Critical patent/AU759364B2/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F3/00Labels, tag tickets, or similar identification or indication means; Seals; Postage or like stamps
    • G09F3/02Forms or constructions
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F3/00Labels, tag tickets, or similar identification or indication means; Seals; Postage or like stamps
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F3/00Labels, tag tickets, or similar identification or indication means; Seals; Postage or like stamps
    • G09F3/08Fastening or securing by means not forming part of the material of the label itself
    • G09F3/10Fastening or securing by means not forming part of the material of the label itself by an adhesive layer

Description

WO 99/31645 PCT/US98/26869 1 LINERLESS POSTAGE STAMPS BACKGROUND AND SUMMARY OF THE INVENTION It has long been considered desirable to provide linerless postage stamps with pressure sensitive adhesive. Pressure sensitive adhesive 5 postage stamps are becoming increasingly popular, but heretofore have always required a release sheet because if a conventional release liner is applied to the top face of the postage stamp (which is necessary to allow stacking of the stamps or formation into a roll configuration), the cancellation pattern applied by the USPS automated equipment has a 10 tendency to not stick to the top face of the stamp, but rather to be wiped off during further handling, because the cancellation ink cannot be absorbed by, or otherwise retained by, the top face of the stamp. If a very light coating of release material is applied to the top of the stamp, then particularly if the stamps are not stored under ideal conditions -- the 15 adhesive from one stamp may stick to the top face of another causing obliteration of the stamp indicia, making it unsuitable for its intended purpose. According to the present invention the above mentioned problem is solved and it is possible to produce linerless postage stamps which have 20 a top face that will appropriately hold cancellation ink when applied in a cancellation pattern so that the cancellation pattern is visible and will not wipe off during normal handling. Basically this is accomplished according to the present invention by providing a barrier coat on the top layer of a paper substrate. While the barrier coat seals off the paper it also creates 25 an uneven surface so that the release material can sink into the substrate as well as allowing the ink from the cancellation pattern to sink into the WO 99/31645 PCT/US98/26869 2 paper. The release layer must allow the ink to pass into the substrate sheet (typically paper) while at the same time providing sufficient release characteristics so that the adhesive from one stamp will not stick to the top face of another. Also the surface of the stamp must be smooth 5 enough to allow processing through conventional high speed equipment. According to one aspect of the present invention a method of making a linerless postage stamp from a sheet or web having top and bottom faces, is provided. The method comprises the steps of: (a) Applying a porosity enhancing or release coat absorption enhancing 10 barrier coat to the top face of the sheet or web. (b) Applying a pressure sensitive adhesive to the bottom face. (c) Applying an adhesive release material, which does not stick to the adhesive in step (b), to the barrier coat from step (a). And, (d) forming the web or sheet into separable postage stamps with postage stamp indicia on the top face. And, wherein 15 steps (a) and (b) are practiced to provide sufficient porosity to the top face so that it can absorb or otherwise retain sufficient stamp cancellation ink so that the ink is visible on the top face once applied and dried. Step (d) may be practiced by (dl) applying postage stamp indicia to the top face prior to the practice of step (a), and (d2) forming lines of 20 weakness in the sheet or web to define the boundaries of separable individual stamps. Step (d2) is typically practiced before steps (b) and (c), but can be practiced at any stage in the method, including after all of steps (a) through (c). Step (a) is typically practiced by applying a styrene acrylic latex as 25 a barrier coating (e.g. available from Northwest Coatings Corp., Northwest Aqueous Barrier Coating, no. 20951), with a weight of between about .7-.85 pounds per ream (e.g. about .70-.80 pounds per ream). A "ream" as used in the present specification and claims refers to the WO 99/31645 PCT/US98/26869 3 amount of substrate or paper that is, or is equivalent to, 500 sheets of 17 inch x 22 inch paper. Step (b) is typically practiced by applying as the release coat UV curable silicone at a weight of between about .4-.5 pounds per ream. The 5 method may also comprise the further step of forming the sheet or web into a roll configuration. The method as described above may also be practiced so that the stamp made is a canceled stamp, in which case the method comprises the further steps of applying the adhesive on the bottom face to a mailing 10 piece, and applying cancellation ink in the form of a cancellation image to the top surface of the stamp so that a sufficient quantity of the ink is absorbed or otherwise retained by the top surface so that the cancellation image is visible and is not easily wiped off during automated processing, and manual handling, of the mailing piece. 15 According to another aspect of the present invention there is provided a canceled postage stamp comprising: A substrate having top and bottom surfaces. Postage stamp indicia imaged on the top face. A porosity enhancing or release material absorption enhancing barrier coat on the top face. An adhesive release coat over the barrier coat. A 20 pressure sensitive adhesive coating the bottom face. Stamp cancellation ink in a cancellation pattern on the release coat. And, the barrier coat properties and coating weight, and the release material properties and coating weight, being such that the stamp cancellation ink is absorbed or otherwise retained by the top face so that the stamp cancellation pattern 25 is readily visible and the ink is not easily wiped off, and the adhesive will not adhere to the top face. The specific barrier coat for the canceled stamp, and its application weight, are preferably as described above. The release coat is preferably WO 99/31645 PCT/US98/26869 4 UV cured silicone applied at a weight of between about .4-.5 pounds per ream, but may be water-based, thermally cured silicone under some circumstances. The substrate preferably is about 20-28 pounds per ream paper, such as 24 pound paper available from Union Camp. The 5 adhesive may be hot melt adhesive, or another conventional type permanent pressure sensitive adhesive, or under some circumstances may comprise a removable adhesive or repositional adhesive (such as "CLEANTAC 3" adhesive available from Moore U.S.A. of Lake Forest, Illinois). 10 According to another aspect of the present invention a postage stamp is provided comprising: A paper substrate having top and bottom faces. A pressure sensitive adhesive on the bottom face. Postage stamp indicia on the top face. A styrene acrylic latex formation barrier coat applied to the top face in an amount between about .7-.8 pounds per 17 15 inch x 22 inch x 500 sheet ream of substrate sheets. And a UV curable silicone release material applied over the barrier coat at a weight between about .4-.5 pounds per 17 inch x 22 inch x 500 sheet ream of substrate paper. According to yet another aspect of the present invention a linerless 20 postage stamp assembly is provided comprising: A web of a plurality of postage stamps comprising a substrate material with pressure sensitive adhesive on a first face, and having a second face having release material which will not adhere to the adhesive but will absorb or otherwise retain stamp cancellation ink substantially permanently in sufficient 25 quantity so that a cancellation pattern thereof is clearly visible. And, the web is a roll configuration with adhesive of one stamp engaging release material of another.
WO 99/31645 PCT/US98/26869 5 It is the primary object of the present invention to provide a linerless postage stamp that can effectively retain the cancellation pattern applied thereto. This and other objects of the invention are apparent from the description herein and from the claims. 5 BRIEF DESCRIPTION OF THE DRAWINGS FIGURE 1 is a schematic illustration of the exemplary method steps according to the present invention; FIGURE 2 is a side schematic view, with the components greatly exaggerated in size for clarity of illustration, of an exemplary linerless 10 postage stamp according to the invention; FIGURE 3 is a top perspective view of a sheet of individual stamps according to the present invention; FIGURE 4 is a side schematic illustration of a postage stamp assembly according to the present invention in a rolled configuration; and 15 FIGURE 5 is a top detail view of an envelope with canceled stamp according to the present invention. DETAILED DESCRIPTION OF THE DRAWINGS FIGURE 1 schematically illustrates an exemplary method according to the present invention in which a web or sheet 10 is acted 20 upon to produce postage stamps. The web or sheet 10 forms the substrate for the postage stamps ultimately produced and preferably is of paper or a material with porosity similar to paper. Most desirably the paper has a weight of between about 20-28 pounds per ream, e.g. about 24 pound Union Camp paper.
WO 99/31645 PCT/US98/26869 6 Typically the first step in the practice of the method schematically illustrated in FIGURE 1 (although many of the steps may be revised in order) is the application of postage stamp indicia as indicated by box 11 in FIGURE 1 to the top face of the web or sheet 10. Then a barrier coat is 5 applied over the postage stamp indicia, as indicated by step 12, and the release coat material is applied over the barrier coat as indicated at 13. The step indicated by box 12 is preferably practiced utilizing a styrene acrylic latex formulation as the barrier coating, although any other barrier coat that sufficiently enhances the porosity, or release coat absorption, of 10 the top face of the sheet or web 10 may be utilized. One exemplary commercially available material is product no. 20951 or 20951A, available from Northwest Coatings. A comparison of some physical properties of these chemicals is as follows: 20951 20951A 15 Brookfield Viscosity @ #2 Spindle, RVF, 900-1400cps 900-1400cps 75-77°F., 20 RPM pH 8.0-9.0 8.75-9.25 Solids 36-39% 35-39% 20 The barrier coat step is typically practiced, as indicated in box 12, by applying about .7-.85 pounds per ream (e.g. between about 0.72-.80 pounds per ream) in a uniform manner. The release coat applied at box 13 in FIGURE 1 preferably is a UV curable silicone, such as General Electric Silicone 9300, or Goldschmidt Silicone 70% RC-711 and 30% 25 RC-726.
WO 99/31645 PCT/US98/26869 7 Step 11 is typically practiced by a press or other imaging device, while steps 12 and 13 may be practiced utilizing flexographic techniques, a Gravure press, or a conventional Meyer rod. The method of FIGURE 1 also includes -- as indicated by box 14 - 5 application of pressure sensitive adhesive to the bottom face of the web or sheet 10. The pressure sensitive adhesive that is applied in box 10 may be any suitable conventional pressure sensitive adhesive, preferably a permanent adhesive like hot melt adhesives (such as Findley 2181), although it also may be a removable or repositional adhesive (such as 10 CLEANTAC 3 adhesive available from Moore U.S.A.). The adhesive may be water-based instead of hot melt, and is applied to the bottom face of the web or sheet 10 using any suitable conventional technique, such as via a slot die. Box 15 in FIGURE 1 indicates the formation of the web or sheet 10 15 into individual separable stamps. Step 15 may be practiced before step 11, or at almost any other place in the process, and is practiced by providing lines of weakness (such as conventional stamp perforations, die cuts, or the like) in the web or sheet 10 utilizing conventional perforating or die cutting equipment or the like. 20 After the linerless stamps are produced, they may be formed into a roll or stack as indicated by box 16 in FIGURE 1. The roll may be formed by slitting the stamps along the direction of movement of the web or sheet 10 during the practice of the steps 11 through 15, so that the roll is only one stamp wide. The stacking of the sheets may be formed by any 25 conventional technique, and the web may be cut into individual sheets with a plurality of stamps in each sheet before they are stacked. The roll or stack formed in step 16 is utilized by separating individual stamps from the roll or stack as indicated schematically by box WO 99/31645 PCT/US98/26869 8 17 in FIGURE 1. The separation may be manually or utilizing conventional automatic equipment. The separated stamp is applied to a mail piece, as indicated at box 18 in FIGURE 1, such as an envelope, package, or postcard. The mail piece is mailed and ultimately the stamp 5 is canceled -- as indicated by box 19 in FIGURE 1 -- utilizing conventional automatic USPS stamp canceling equipment. The stamp canceling equipment applies a cancellation pattern, with cancellation ink, to the top face of the stamp, while the pressure sensitive adhesive on the bottom face of the stamp is adhered to the mail piece. 10 FIGURE 2 is a side cross-sectional view, with the elements thereof greatly exaggerated in thickness and contour for clarity of illustration, of an exemplary linerless stamp according to the invention. The stamp 20 comprises a substrate 21, preferably about 20-28 pound per ream of paper, with a top face 22 and a bottom face 23. On the bottom face 23 is 15 a layer of conventional pressure sensitive adhesive 24, such as hot melt adhesive. On the top face 22 is postal stamp indicia, indicated by reference numeral 25, which typically includes the amount of postage and some sort of design. Applied over the indicia 25 and in contact with the top face 22 is the barrier coat material 26, such as the Northwest 20 Coatings 20951 material earlier described. The material 25 has a relatively uneven surface, as indicated schematically at 27 in FIGURE 2, and functions to enhance the porosity, or release coat absorption, of the top face 22 of the stamp 20. Applied over the barrier coat 26 is the release material 28, such as 25 a conventional UV curable silicone as described above, or water-based thermally cured silicone. Typically the barrier coat 26 has a weight of about .7-.85 pounds per ream, e.g. between about 0.72-.80 pounds per ream, while the WO 99/31645 PCT/US98/26869 9 silicone coating 28 has a weight of between about Q.4-0.5 pounds per ream. FIGURE 3 illustrates a sheet 30 of individual stamps 20 according to the invention, each of the individual stamps 20 being separated from 5 each other by conventional lines of weakness 31, in this case perforation lines. The upper left corner of the cut off end of the sheet 30 is shown turned back to illustrate the pressure sensitive adhesive 24 on the bottom face 23 thereof. When the sheets 30 are stacked in a stack, the pressure sensitive adhesive 24 from one sheet 30 will not adhere to the release 10 coat 28 on the underlying sheet 30. FIGURE 4 schematically illustrates a postage stamp assembly according to the present invention in roll configuration, shown generally by reference numeral 34 in FIGURE 1. The roll is one stamp wide with each of the stamps 20 again being separated by lines of weakness such 15 as perforation lines 31. In the roll configuration 34 the pressure sensitive adhesive 24 from the outer stamps engage the release coat 28 of the inner stamps, and they do not stick together. FIGURE 4 also schematically illustrates a postage stamp 20 being applied to a mail piece 35, such as an envelope, package, or postcard. 20 The pressure sensitive adhesive 24 of the stamp 20 is applied to the addressed surface 36 of the mail piece 35, pressure causing the adhesive 24 to securely adhere to the face 36, and in fact permanently adhere if the adhesive 24 is a permanent adhesive, such as Findley 2181. The mailing piece 35 is subsequently mailed, and processed by the USPS. 25 During processing, utilizing conventional equipment, a cancellation pattern is applied over the stamp 20 using cancellation ink. For example FIGURE 5 shows a canceled version 20' of the stamp 20 of FIGURE 4 on the mailing piece 35 after the cancellation pattern/ink 38 is applied WO 99/31645 PCT/US98/26869 10 thereto. Because of the properties of the top surface 22, as modified by the particular application of the barrier coat 26 and the release material 28 according to the invention, the cancellation pattern/ink 38 is clearly visible on the stamp 20', and is not easily wiped off during automated processing 5 and the manually handling of the mailing piece 35. The cancellation ink in pattern 38 is typically that available from American Coding and Marking Co. referenced as USPS 914M2B Cancellation Ink. While the invention has been herein shown and described in what 10 is presently conceived to be the most practical and preferred embodiment it is apparent to those of ordinary skill in the modified that many modifications may be made thereof within the scope of the invention which scope is to be accorded the broadest interpretation of the appended claims so as to encompass all equivalent processes and 15 products.

Claims (15)

1. A method of making a linerless postage stamp from a sheet or 2 web having top and bottom faces comprising the steps of: 3 (a) applying a porosity enhancing or release coat absorption 4 enhancing barrier coat to the top face of the sheet or web; 5 (b) applying a pressure sensitive adhesive to the bottom face; 6 (c) applying an adhesive release material, which does not stick to 7 the adhesive in step (b), to the barrier coat from step (a); and 8 (d) forming the web or sheet into separable postage stamps with 9 postage stamp indicia on the top face; and 10 wherein steps (a) and (b) practiced to provide sufficient porosity to 11 the top face so that it can absorb or otherwise retain sufficient stamp 12 cancellation ink so that the ink is visible on the top face once applied and 13 dried. 1
2. A method as recited in claim 1 wherein step (d) is practiced by 2 (dl) applying postage stamp indicia to the top face prior to the practice of 3 step (a), and (d2) forming lines of weakness in the sheet or web to define 4 the boundaries of separable individual stamps. 1
3. A method as recited in claim 2 wherein step (d2) is practiced 2 before steps (b) and (c). 1
4. A method as recited in claim 1 wherein step (a) is practiced by 2 applying a styrene acrylic latex formation barrier coating at a weight of 3 between about .7-.85 pounds per ream. WO 99/31645 PCT/US98/26869 12 1
5. A method as recited in claim 4 wherein step (b) is practiced by 2 applying as the release coat UV curable silicone at a weight of between 3 about .4-.5 pounds per ream. 1
6. A method as recited in claim 5 comprising the further step of 2 forming the sheet or web into a roll configuration 1
7. A method as recited in claim 1 wherein the stamp made is a 2 canceled stamp, and comprising the further step of applying the adhesive 3 on the bottom face to a mailing piece, and applying cancellation ink in the 4 form of a cancellation image to the top surface of the stamp so that a 5 sufficient quantity of the ink is absorbed or otherwise retained by the top 6 surface so that the cancellation image is visible and is not easily wiped off 7 during automated processing, and manual handling, of the mailing piece. 1
8. A canceled postage stamp comprising: 2 a substrate having top and bottom surfaces; 3 postage stamp indicia imaged on said top face; 4 a porosity enhancing or release material absorption enhancing 5 barrier coat on said top face; 6 an adhesive release coat over said barrier coat; 7 a pressure sensitive adhesive coating said bottom face; 8 stamp cancellation ink in a cancellation pattern on said release 9 coat; and 10 said barrier coat properties and coating weight and said release 11 material properties and coating weight, being such that said stamp 12 cancellation ink is absorbed or otherwise retained by said top face so that WO 99/31645 PCT/US98/26869 13 13 said stamp cancellation pattern is readily visible and said ink is not easily 14 wiped off, and said adhesive will not adhere to said top face. 1 9. A canceled postage stamp as recited in claim 8 wherein said 2 barrier coat is a styrene acrylic latex formation applied at a weight of 3 between about .7-.85 pounds per 17 inch x 22 inch x 500 sheet ream of 4 substrate sheets. 1 10. A canceled postage stamp as recited in claim 9 wherein said 2 release coat is UV cured silicone applied at a weight of between about .4 3 .5 pounds per 17 inch x 22 inch x 500 sheet ream of substrate sheets. 1 11. A canceled postage stamp as recited in claim 10 wherein said 2 substrate is about 20-28 pounds per 17 inch x 22 inch x 500 sheet ream 3 of paper. 1 12. A postage stamp comprising: 2 a paper substrate having top and bottom faces; 3 a pressure sensitive adhesive on said bottom face; 4 postage stamp indicia on said top face; 5 a styrene acrylic latex formation barrier coat applied to said top 6 face in an amount between about .7-.8 pounds per 17 inch x 22 inch x 7 500 sheet ream of substrate sheets; and 8 a UV curable silicone release material applied over said barrier 9 coat at a weight between about .4-.5 pounds per 17 inch x 22 inch x 500 10 sheet ream of substrate paper. 1 13. A linerless postage stamp assembly comprising: WO 99/31645 PCT/US98/26869 14 2 a web of a plurality of postage stamps comprising a substrate 3 material with pressure sensitive adhesive on a first face, and having a 4 second face with release material which will not adhere to said adhesive 5 but will absorb or otherwise retain stamp cancellation ink substantially 6 permanently in sufficient quantity so that a cancellation pattern thereof is 7 clearly visible; and 8 said web is a roll configuration with adhesive of one stamp 9 engaging release material of another. 1 14. A linerless postage stamp assembly as recited in claim 13 2 wherein said pressure sensitive adhesive is hot melt adhesive or 3 repositional adhesive. 1 15. A postage stamp as recited in claim 12 wherein said pressure 2 sensitive adhesive comprises hot melt adhesive or repositional adhesive. 1 16. A postage stamp as recited in claim 12 wherein said paper 2 substrate comprises about 20-28 pounds per 500 sheet ream of 17 inch x 3 22 inch paper. 1 17. A linerless postage stamp assembly as recited in claim 13 2 wherein said substrate comprises about 20-28 pounds per 500 sheet 3 ream 17 inch x 22 inch paper, and wherein said web is one stamp wide. 1 18. A linerless postage stamp assembly as recited in claim 17 2 wherein each stamp is connected to adjacent stamps by a line of 3 weakness. WO 99/31645 PCT/US98/26869 15 1 19. A linerless postage stamp, and method of production and use 2 thereof, substantially as shown and described. WO 99/31645 PCT/US98/26869 16 AMENDED CLAIMS [received by the International Bureau on 10 May 1999 (10.05.99); original claims 1 - 19 replaced by amended claims 1 - 15 (3 pages)] 1. A method of making a linerless postage stamp from a sheet or web having top and bottom faces comprising the steps of: (a) applying a porosity enhancing or release coat absorption enhancing barrier coat to the top face of the sheet or web; (b) applying a pressure sensitive adhesive to the bottom face; (c) applying an adhesive release material, which does not stick to the adhesive in step (b), to the barrier coat from step (a); and (d) forming the web or sheet into separable postage stamps with postage stamp indicia on the top face; and wherein steps (a) and (c) are practiced to provide sufficient porosity to the top face so that it can absorb or otherwise retain sufficient stamp cancellation ink so that the ink is visible on the top face once applied and dried. 2. A method as recited in claim 1 wherein step (d) is practiced by (dl) applying postage stamp indicia to the top face prior to the practice of step (a), and (d2) forming lines of weakness in the sheet or web to define the boundaries of separable individual stamps. 3. A method as recited in claim 2 wherein step (dl) is practiced before steps (b) and (c). 4. A method as recited in any preceding claim wherein step (a) is practiced by applying a styrene acrylic latex formation barrier coating at a weight of between about .7 .85 pounds per ream. 5. A method as recited in any preceding claim wherein step (c) is practiced by applying as the release coat UV curable silicone at a weight of between about .4-.5 pounds per ream. A N M " l W TiT QT .FMr f A D r TrT V In'1 WO 99/31645 PCT/US98/26869 17 6. A method as recited in any preceding claim comprising the further step of forming the sheet or web into a roll configuration. 7. A method as recited in any preceding claim wherein the stamp made is a canceled stamp, and comprising the further step of applying the adhesive on the bottom face to a mailing piece, and applying cancellation ink in the form of a cancellation image to the top surface of the stamp so that a sufficient quantity of the ink is absorbed or otherwise retained by the top surface so that the cancellation image is visible and is not easily wiped off during automated processing, and manual handling, of the mailing piece. 8. A canceled postage stamp comprising: a substrate having top and bottom surfaces; postage stamp indicia imaged on said top face; a porosity enhancing or release material absorption enhancing barrier coat on said top face; an adhesive release coat over said barrier coat; a pressure sensitive adhesive coating said bottom face; stamp cancellation ink in a cancellation pattern on said release coat; and said barrier coat properties and coating weight and said release material properties and coating weight, being such that said stamp cancellation ink is absorbed or otherwise retained by said top face so that said stamp cancellation pattern is readily visible and said ink is not easily wiped off, and said adhesive will not adhere to said top face.
9. A canceled postage stamp as recited in claim 8 wherein said barrier coat is a styrene acrylic latex formation applied at a weight of between about .7-.85 pounds per 17 inch x 22 inch x 500 sheet ream of substrate sheets.
10. A canceled postage stamp as recited in claim 8 or 9 wherein said release coat is UV cured silicone applied at a weight of between about .4-.5 pounds per 17 inch x 22 inch x 500 sheet ream of substrate sheets. WO 99/31645 PCT/US98/26869 18
11. A canceled postage stamp as recited in claim 8, 9, or 10 wherein said substrate is about 20-28 pounds per 17 inch x 22 inch x 500 sheet ream of paper.
12. A postage stamp comprising: a paper substrate having top and bottom faces; a pressure sensitive adhesive on said bottom face; postage stamp indicia on said top face; a styrene acrylic latex formation barrier coat applied to said top face in an amount between about .7-.8 pounds per 17 inch x 22 inch x 500 sheet ream of substrate sheets; and a UV curable silicone release material applied over said barrier coat at a weight between about .4-.5 pounds per 17 inch x 22 inch x 500 sheet ream of substrate paper.
13. A postage stamp as recited in claim 12 wherein said pressure sensitive adhesive comprises hot melt adhesive or repositional adhesive.
14. A postage stamp as recited in claim 12 or 13 wherein said paper substrate comprises about 20-28 pounds per 500 sheet ream of 17 inch x 22 inch paper.
15. A linerless postage stamp, and method of production and use thereof, substantially as shown and described.
AU20878/99A 1997-12-17 1998-12-17 Linerless postage stamps Ceased AU759364B2 (en)

Applications Claiming Priority (5)

Application Number Priority Date Filing Date Title
US6985197P 1997-12-17 1997-12-17
US60/069851 1997-12-17
US09/205699 1998-12-04
US09/205,699 US6203067B1 (en) 1997-12-17 1998-12-04 Linerless postage stamps with cancellation ink absorbing particles
PCT/US1998/026869 WO1999031645A1 (en) 1997-12-17 1998-12-17 Linerless postage stamps

Publications (2)

Publication Number Publication Date
AU2087899A true AU2087899A (en) 1999-07-05
AU759364B2 AU759364B2 (en) 2003-04-10

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AU20878/99A Ceased AU759364B2 (en) 1997-12-17 1998-12-17 Linerless postage stamps

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US (1) US6203067B1 (en)
EP (1) EP1040463A1 (en)
JP (1) JP2002509264A (en)
CN (1) CN1282442A (en)
AU (1) AU759364B2 (en)
BR (1) BR9813737A (en)
CA (1) CA2312946C (en)
NZ (1) NZ505622A (en)
WO (1) WO1999031645A1 (en)

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Also Published As

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CA2312946C (en) 2008-07-22
AU759364B2 (en) 2003-04-10
BR9813737A (en) 2000-10-10
JP2002509264A (en) 2002-03-26
US6203067B1 (en) 2001-03-20
NZ505622A (en) 2002-12-20
EP1040463A1 (en) 2000-10-04
CN1282442A (en) 2001-01-31
WO1999031645A1 (en) 1999-06-24
CA2312946A1 (en) 1999-06-24

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